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Bone marrow-derived endothelial progenitor cells: a promising therapeutic alternative for corneal endothelial dysfunction.

机译:骨髓来源的内皮祖细胞:角膜内皮功能障碍的有前途的治疗选择。

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BACKGROUND: The global shortage of donor corneas has motivated the development of bioengineered corneas. Although corneal endothelium has been reconstituted using corneal endothelial cells (CEC) and precursor cells with various carrier materials, all of the current options require corneal tissue and are also limited by the scarcity of donor corneas. Here, we explored the feasibility of inducing bone marrow-derived endothelial progenitor cells (BEPC) to differentiate into CEC for the repair of corneal endothelial defects. MATERIALS AND METHODS: BEPC were isolated from human fetal bone marrow, and identified using several antigen markers. BEPC were cocultured with CEC for 10 days in a transwell system with conditioned medium from CEC, and cell transdifferentiation was then examined. With a porcine corneal acellular matrix (PCACM) as the carrier, the induced BEPC were transplanted onto a cat's cornea from which Descemet's membrane and the endothelium had been stripped. RESULTS: The induced BEPC resembled CEC in polygonal shape, expressing aquaporin-1, tightly opposed cell junctions, and neurone-specific enolase. Twenty-eight days after surgery, the transparency gradually returned to the corneas transplanted with the induced BEPC on PCACM. CONCLUSIONS: Human fetal BEPC transdifferentiate into corneal endothelial-like cells in vitro. Features of the induced BEPC indicated that they may be useful for the repair of corneal endothelial dysfunction.
机译:背景:供体角膜的全球短缺推动了生物工程角膜的发展。尽管已经使用具有各种载体材料的角膜内皮细胞(CEC)和前体细胞重建了角膜内皮,但是所有当前的选择都需要角膜组织,并且还受到供体角膜稀缺性的限制。在这里,我们探讨了诱导骨髓来源的内皮祖细胞(BEPC)分化为CEC修复角膜内皮缺陷的可行性。材料与方法:从人胎儿骨髓中分离出BEPC,并使用几种抗原标记进行鉴定。将BEPC与CEC在带有来自CEC的条件培养基的transwell系统中共培养10天,然后检查细胞的转分化作用。以猪角膜脱细胞基质(PCACM)为载体,将诱导的BEPC移​​植到猫的角膜上,从该猫的Descemet膜和内皮中剥离了该膜。结果:诱导的BEPC类似于CEC,呈多边形形状,表达aquaporin-1,紧密相对的细胞连接和神经元特异性烯醇化酶。术后二十八天,透明性逐渐恢复到在PCACM上植入诱导的BEPC的角膜。结论:人胎儿BEPC在体外转分化为角膜内皮样细胞。诱导的BEPC的特征表明它们可能对修复角膜内皮功能障碍有用。

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